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To optimize their mechanical performance requires the characterisation of the foam behaviour at high strain rates and identification of the underlying mechanisms.
The mechanism of self-sharpening behaviour of penetrator made of BMG composites was explained based on the material behaviour at high strain rate and high temperature.
Representative-volume-element (RVE) models examine multi-fibre/melt response, and demonstrate that inclusion of fibre friction produces the observed yield-stress behaviour at low strain rates, and viscous behaviour at high strain rates.
Experimental data of polymer behaviour at high strain rates in the literature, mostly obtained with a split Hopkinson pressure bar (SHPB), shows a dependence on the thickness of the specimen.
The critical strain rate for transition from a rubbery-like behaviour at low strain rates to a glassy-like behaviour at high strain rates at room temperature is determined.
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122 (1995) 790 802, F. Donzé, S.A. Magnier, L. Daudeville, C. Mariotti, Numerical study of compressive behaviour of concrete at high strain rates, J. Engrg.
The behaviour of strain hardening at high strain levels is related to the transformation rate of γr which is greatly affected by the stability of γr.
Models currently used to simulate the impact behaviour of polymeric foam at high strain rates use data from mechanical tests.
The Johnson Cook law is used to model the behaviours of composite materials at high strain rates.
In the present study, numerical analyses are performed to investigate the compressive behaviour of concrete-like material at high strain rates.
Though both investigated materials are polyamide based semi-crystalline thermoplastics, at high strain rates, their behaviour differs as one exhibits ductile behaviour while the other brittle failure.
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